Brain motor and fear circuits regulate leukocytes during acute stress

免疫系统 免疫学 神经科学 生物 先天免疫系统 白细胞贩卖 骨髓 免疫 光遗传学 趋化因子 医学
作者
Wolfram C. Poller,Jeffrey Downey,Agnes A. Mooslechner,Nargis Khan,Long Li,Christopher T. Chan,Cameron S. McAlpine,Chunliang Xu,Florian Kahles,Shun He,Henrike Janssen,John E. Mindur,Sumnima Singh,Máté G. Kiss,Laura Alonso-Herranz,Yoshiko Iwamoto,Rainer H. Köhler,Lai Ping Wong,Kashish Chetal,Scott J. Russo
出处
期刊:Nature [Springer Nature]
卷期号:607 (7919): 578-584 被引量:190
标识
DOI:10.1038/s41586-022-04890-z
摘要

The nervous and immune systems are intricately linked1. Although psychological stress is known to modulate immune function, mechanistic pathways linking stress networks in the brain to peripheral leukocytes remain poorly understood2. Here we show that distinct brain regions shape leukocyte distribution and function throughout the body during acute stress in mice. Using optogenetics and chemogenetics, we demonstrate that motor circuits induce rapid neutrophil mobilization from the bone marrow to peripheral tissues through skeletal-muscle-derived neutrophil-attracting chemokines. Conversely, the paraventricular hypothalamus controls monocyte and lymphocyte egress from secondary lymphoid organs and blood to the bone marrow through direct, cell-intrinsic glucocorticoid signalling. These stress-induced, counter-directional, population-wide leukocyte shifts are associated with altered disease susceptibility. On the one hand, acute stress changes innate immunity by reprogramming neutrophils and directing their recruitment to sites of injury. On the other hand, corticotropin-releasing hormone neuron-mediated leukocyte shifts protect against the acquisition of autoimmunity, but impair immunity to SARS-CoV-2 and influenza infection. Collectively, these data show that distinct brain regions differentially and rapidly tailor the leukocyte landscape during psychological stress, therefore calibrating the ability of the immune system to respond to physical threats. Distinct brain regions differentially and rapidly tailor the leukocyte landscape during psychological stress, calibrating the ability of the immune system to respond to physical threats.
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